
陈伟
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2016.09至2021.12电子科技大学博士,2021.12-2025.03电子科技大学博士后(博新计划),2025.03晋升为电子科技大学副教授,硕士生导师。期间荣获Wiley中国杰出作者,四川省“天府青城”计划等荣誉。
依托电子薄膜与集成器件全国重点实验室,开展高能效比小/微型能源技术研究,覆盖能源材料—结构—器件集成等技术, 涉及超高比能锂离子电池、全固态陶瓷电池、可充电多层陶瓷芯片等。
近年来,主持国家自然科学基金青年、国家博士后创新基金、国家博士后面上、重点国有企业横向等项目,研究成果已在中国航天、中电科、海外的无人机、移动终端等部分小型无人系统开展应用,同时担任Nat. Commun.,Adv. Mater., 等学术期刊审稿人、国家级科技型某企业高级顾问等职务。
欢迎优秀的本科生报考,我们一起共同学术探索,有意向的同学请提前联系!
近年来在Nat. Commun.,Joule,Energy Environ. Sci., Adv. Mater.,Adv. Energy Mater.,等刊物发表论文50余篇,一作/通讯30余篇,IF>10的30篇,总影响因子>600,累计被引>5000次,授权中国发明专利30余项。
Slected Publications:
1. Dongjiang Chen, Wei Chen, Bowen Zhang, Ning Chen, Yin Hu, Tianyu Lei, Shuying Wang,
Miao He, Mingjie ZhouXiulan Li, Yuanpeng Liu, Yichao Yan, Yaxiang Lu, Xianfu Wang.
Ultrathin Yet Robust Quasi-Solid-State Electrolyte with Ion-Selective Channel for Superior
Alkali-Metal Batteries, Adv. Funct. Mater.,2025,2503786.(共同第一作者;学院A类)
2. Dongjiang Chen, Wei Chen, Bowen Zhang, Yin Hu, Shuying Wang, Tianyu Lei,
Miao He, Yuxin Fan, Mingjie Zhou, Yichao Yan, Yuanpeng Liu, Xianfu Wang,
Genqiang Zhang.High Partial Molar Volume Polymer Electrolyte for Upgraded
Lithium Metal Batteries, Angew. Chem. Int. Ed., 2025, e202500896.(共同第一作者)
3. Enquan Luo, Xuemei Ren, Miao He, Shen Liu, Hui Yang, Li Xia, Dongjiang Chen,
Chaoyi Yan*, Yin Hu, Tianyu Lei, Yichao Yan*, Wei Chen*. Strategies Toward Stable
Anode Interface for Sulfide-Based All-Solid-State Lithium Metal
Batteries, Small, 2025, 21,2412723.(通讯作者;学院A类)
4. Miao He, Yuxing Fan, Shen Liu, Shuying Wang, Tongwei Wu, Dongjiang Chen*,
Anjun Hu, Chaoyi Yan, Yichao Yan, Jianping Long, Yin Hu*, Tianyu Lei, Peng Li*,
Wei Chen*.The Origin of Li2S2 Reduction Mechanism Modulated by Single-Atom
Catalyst for all Solid-State Li-S Batteries,
Adv. Energy Mater., 2025, 2405642.(通讯作者;学院A类)
5. Liu, Sheng; He, Miao; Wang, Shuying; Hu, Yin; Chen, Dongjiang*; Shu, Chaozhu;
Lv Weiqiang; Chen, Bo; Chen, Dongxu; Xia, Li; Wu, Jutao; Lei, Tianyu*; Yan, YiChao; Yan,
Chaoyi; Chen, Wei*. Design of Lithium Metal-Compatible Sulfide Electrolytes by
Electronic Structure Engineering for All-Solid-State Lithium Metal Batteries,
Nano Energy, 2025, 142, 111176.(通讯作者)
6. Fei Li, Haowei Yuan, Yifan Wang, Zhiyu Xue, Miao He, Jiacheng Wang, Fang Wu,
Ming Huang, Yong Xiang, Anjun Hu*, Wei Chen*, Tongwei Wu*, Xuping Sun*.
Tailoring Li‐Accelerated Motif Enables Lithium Stabilization and Polysulfide Conversion
for Long‐Cycling Li–S Batteries, Adv. Funct. Mater., 2025, 35, e11078 (通讯作者;学院A类)
7. Xuemei Ren, Tianyu Lei, Miao He, Shuying Wang, Sheng Liu, Xiaofeng Xie*, Jun Chen,
Yin Hu, Dongjiang Chen*, Wenliang Wang, Tongwei Wu*, Yichao Yan, Wei Chen*.
Synergistic Co‐Optimization Strategy for Electron‐Ion Transport Kinetics in all‐Solid‐State
Sulfurized Polyacrylonitrile Cathodes, Small., 2025, 21, e07810.(通讯作者;学院A类)
8. Zulong Liu, Sheng Liu, Jun Chen, Xuemei Ren, Chi Zhang, Yu Jiao*, Shuchen Liu,
Xiaodong Zhu*, Yichao Yan, Tianyu Lei, Dongjiang Chen, Yin Hu, Wei Chen*.
Dynamic Reconstruction of Polysulfides to Elemental Sulfur Enabling High-Performance
Ah-level Lithium-Sulfur Pouch Cells, Adv. Funct. Mater., 2025, e25861.(通讯作者;学院A类)
9. Yanjiao Zhou, Dongjiang Chen*, Xuemei Ren, Yin Hu, Wei Chen, Chaoyi Yan*,
Tianyu Lei. Reliable Sulfur Cathode Design for All-Solid-State Lithium Metal Batteries
Based on Sulfide Electrolytes, Adv. Energy Mater., 2025, 2500061.(通讯作者;学院A类)
10.Wei Chen, Yin Hu, Yuanpeng Liu, Shuying Wang, Anjun Hu, Tianyu Lei*, Yaoyao Li,
Peng Li, Dongjiang Chen, Li Xia*, Lanxin Xue, Yichao Yan, Gongxun Lu, Mingjie Zhou,
Yuxin Fan, Hui Yang, Xinyong Tao, Xianfu Wang, Yanrong Li, Jie Xiong*.Ultralong Cycling
and Safe Lithium–Sulfur Pouch Cells for Sustainable Energy Storage,
Adv. Mater., 2024, 2312880.(第一作者;学院A类)
11. Fan Wang, Wei Chen, Tianyu Lei, Chi Zhang, Kaijun Cheng, Yaoyao Li, Dongjiang Chen,
Chunyang Wu, Xiaobin Niu, Yin Hu*.Tuning the Localized Dissolution Environment of
Polysulfides for Practical Li-S cells,J. Power Sources, 2024,589, 233754.(共同第一作者)
12. Shuying Wang, Sheng Liu, Wei Chen*, Yin Hu*, Dongjiang Chen, Miao He, Mingjie Zhou,
Tianyu Lei, Yagang Zhang*, Jie Xiong*. Designing Reliable Cathode System for
High-Performance Inorganic Solid-State Pouch Cells,
Adv. Sci., 2024, 2401889.(通讯作者)
通讯/办公地址 : 8ecdb5a3f276d7e8a3a8389b16dac6c61e6d937a43d6899d14b3bf9f80ae454d20ce2104303bebe9348b7bad4066f9bdd3dfb423653318b235d45792ca5c95b112e021d180eba3b1d2fdb237fde0bf860b42030ce5c9f7e9f3335034abef178437762cf1a4696f4b58840f1a50e2161424aa37d0301f6b6b229fbbe98e7da9ef
移动电话 : 98974844667328411cbdbb7f0c1b3bcca85424afe4246b5a1c7e2a1f5e7965977cb8988f5610febffc26f28daf7f0339ba9350f20929a64aa8aca4d43a398b7f3cc0e8ea76583c5f9568ba5e143f62a3203a1f4aa62cd40312365667574053a2c86c5fc29f0a80ed625de1424d99a697c23cb69112fe4e13ab67e18bcb95f40f
邮箱 : 1f0bcbc7a24be7a1070f9cddacb68e08fa5995a5866d2a8a0a01c38aeb5ab072492df73291d2386d82725597eca28545b070ddb4ee4eb015c086e2b3bb6b0173d0078785bae33e83faf3ba7cd15f31a73935c9a1fdb212ed75f2c427614c3ee0bed806304de5d8c04916f38cec131d19bff4648c1e5a359a8f9823e56d357892
面向无人机、移动终端等需求的超高比能电池体系化技术研究
高比能陶瓷基硫卤化物固态电池技术研究
可充电陶瓷基固态能源芯粒及集成技术研究